CN212222192U - Petrochemical device module with guide rail sliding block - Google Patents

Petrochemical device module with guide rail sliding block Download PDF

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Publication number
CN212222192U
CN212222192U CN202020906270.XU CN202020906270U CN212222192U CN 212222192 U CN212222192 U CN 212222192U CN 202020906270 U CN202020906270 U CN 202020906270U CN 212222192 U CN212222192 U CN 212222192U
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China
Prior art keywords
movable
guide rail
block
sliding block
steel
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CN202020906270.XU
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Chinese (zh)
Inventor
黄益平
王佳兵
李晓翔
杨万典
潘春宇
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China Construction Industrial and Energy Engineering Group Co Ltd
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China Construction Industrial and Energy Engineering Group Co Ltd
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Abstract

The utility model discloses a take petrochemical industry device module of guide rail slider, concretely relates to petrochemical industry device technical field, including the steel frame module, the steel frame module includes the steel column, is provided with the multilayer crossbeam on the steel column, and the side surface fixed mounting of steel column has the guide rail, installs the sliding block on the guide rail, and sliding block side surface fixed mounting has the movable block, and fixed pin axle and first locking piece are installed in the embedding on the movable block, and one side of fixed pin axle is provided with first locking piece, and the inside groove has been seted up to the side surface of sliding block, and the inside of inside groove is provided with the second. The utility model discloses a after fixing the guide rail on the steel column, the lug is in level, slope and vertical state respectively, accomplishes steel frame's rectilinear lifting by crane, can lift by crane the situation according to steel frame's reality, removes and the removal of angle the position of lug for steel frame wholly can be applicable to lifting by crane of different angles, very big convenient staff operates, possesses higher in-service use and worth.

Description

Petrochemical device module with guide rail sliding block
Technical Field
The utility model relates to a petrochemical industry device technical field, more specifically say, the utility model relates to a take guide rail slider's petrochemical industry device module.
Background
The so-called module is to divide the building system into a plurality of standard units with independent structures and functions, and then combine the standard units according to specific building requirements. The device is characterized in that complete equipment, a prying block, a container, a pump, a pipeline, a valve, an instrument, electricity and the like are built and installed in the same structural framework in a module building plant and are integrally transported to a field for installation. The modular construction of China is developed in two directions at present, one direction is to fully utilize field resources to develop into a huge module, and the weight of a single module can reach thousands of tons or even thousands of tons. Such huge modules are limited by site and transportation, and in most cases, the site of the project and the site of module construction are offshore. The other direction is to fully utilize the design capability of the modularized factory to develop the modularization direction of the whole factory.
However, in actual use, there are still many defects, because the maximum size of the length, the width and the height of the special-shaped module is calculated when the transportation cost is measured, compared with the regular-shaped module, the special-shaped module can lose a large transportation volume, thereby increasing the transportation cost, and problems easily occur in hoisting due to deviation of the gravity center of the special-shaped module, so that the traditional design method needs to be improved.
SUMMERY OF THE UTILITY MODEL
To overcome the above-mentioned deficiencies of the prior art, embodiments of the present invention provide a petrochemical device module with rail blocks, through the integral design, after the guide rail is fixed on the steel column, the lifting lug is in a horizontal state at first, the lifting hook penetrates through the lifting lug, so that the steel frame is horizontally lifted, the movable frame is turned over to a certain angle on the movable block to finish the inclined hoisting of the steel frame, in addition, the sliding block slides on the guide rail, when the lifting lug slides to the uppermost position and is positioned on the side surface of the cross beam, the lifting lug is in a vertical state, the vertical lifting of the steel frame is completed, and according to the actual lifting condition of the steel frame, the position to the lug removes and the removal of angle for steel frame is whole can be applicable to lifting by crane of different angles, and very big convenient staff has operated, possesses higher in-service use and worth.
In order to achieve the above object, the utility model provides a following technical scheme: a petrochemical device module with a guide rail sliding block comprises a steel frame module, wherein the steel frame module comprises steel columns, cross beams, towers, heat conductors, storage tanks, guide rails, movable blocks, lifting lugs, sliding blocks, fixed pin shafts, movable frames, positioning holes, first locking parts, through holes, inner grooves, second locking parts, fixed blocks, movable rods, pull plates, first springs, second springs and positioning rods, the steel columns are provided with multiple layers of cross beams, a plurality of groups of steel columns are provided with the towers in the vertical direction, the cross beams are fixedly provided with the heat conductors and the storage tanks, one side of each heat conductor is provided with the storage tank, the side surfaces of the steel columns are fixedly provided with the guide rails, the sliding blocks are arranged on the guide rails, the movable blocks are fixedly arranged on the side surfaces of the sliding blocks, the movable frames are embedded in one side of the movable frames, the lifting lugs are fixedly arranged at one ends of the movable frames, the fixed pin, a first locking piece is arranged on one side of the fixed pin shaft, a positioning hole is formed in the inner side of the movable block, a through hole is formed in the side surface of the guide rail, an inner groove is formed in the side surface of the sliding block, and a second locking piece is arranged inside the inner groove;
the first locking piece comprises a fixed block, a movable rod penetrates through the fixed block, one end of the movable rod is fixedly provided with a pull plate, a first spring is sleeved outside the movable rod, and the fixed block is fixedly connected with the movable block;
the second locking piece comprises a second spring, and a positioning rod is fixedly mounted at one end of the second spring.
In a preferred embodiment, the number of the movable rods is four, the four groups of movable rods are connected with the movable block in a sliding manner, and the ends of the movable rods are clamped with the positioning holes.
In a preferred embodiment, the movable block is rotatably connected with the movable frame through a fixed pin shaft, and the movable frame is connected with the lifting lug in a welding manner.
In a preferred embodiment, the steel columns and the cross beam are fixedly connected through locking bolts, and the cross beam is provided with multiple layers.
In a preferred embodiment, the guide rail is designed in a U-shaped structure, the guide rail is connected with the sliding block in a sliding manner, and the sliding block is fixedly connected with the movable block.
In a preferred embodiment, the through holes on the guide rail are provided in a plurality of sets.
In a preferred embodiment, the steel columns and the cross beams are fixedly connected together through locking bolts, and the tower, the heat conductor and the storage tank are respectively and fixedly connected with the cross beams through the locking bolts.
The utility model discloses a technological effect and advantage:
1. the utility model discloses in through the global design, fix the guide rail on the steel column after, the lug is in the horizontal state at first, pass the lifting hook, accomplish the horizontal lifting with the steel frame with this, upset adjustable shelf to certain angle on the movable block, accomplish the tilting of steel frame and lift by crane, in addition, the sliding block then slides on the guide rail, when it slides to the position department of the top, be in the side surface of crossbeam, the lug at this moment is in vertical state, accomplish the rectilinear lifting of steel frame, can be according to the actual lifting situation of steel frame, the position of lug is removed and the removal of angle, make the whole steel frame can be applicable to the lifting of different angles, the very big staff that has made things convenient for operates, possess higher practical use value;
2. the utility model discloses in through the modularization installation, assemble steel column and crossbeam in advance, use the locking bolt to fix, form a frame, afterwards, place tower, heat conductor, storage tank respectively on the frame that is assembled, fix, after the monolithic stationary is accomplished to form modularization steel frame, can comparatively effectually install whole, improved work efficiency.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic structural view of the middle guide rail and the movable block of the present invention.
Fig. 3 is a schematic structural diagram of the middle movable block of the present invention.
Fig. 4 is a schematic structural diagram of the first locking member of the present invention.
The reference signs are: the device comprises a steel column 1, a beam 2, a tower 3, a heat conductor 4, a storage tank 5, a guide rail 6, a movable block 7, a lifting lug 8, a sliding block 9, a fixed pin shaft 10, a movable frame 11, a positioning hole 12, a first locking piece 13, a through hole 14, an internal groove 15, a second locking piece 16, a fixed block 17, a movable rod 18, a pulling plate 19, a first spring 20, a second spring 21 and a positioning rod 22.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The petrochemical device module with the guide rail sliding block shown in the attached drawings 1-4 comprises a steel frame module, wherein the steel frame module comprises a steel column 1, a cross beam 2, a tower 3, a heat conductor 4, a storage tank 5, a guide rail 6, a movable block 7, a lifting lug 8, a sliding block 9, a fixed pin shaft 10, a movable frame 11, a positioning hole 12, a first locking part 13, a through hole 14, an inner groove 15, a second locking part 16, a fixed block 17, a movable rod 18, a pulling plate 19, a first spring 20, a second spring 21 and a positioning rod 22, the steel column 1 is provided with a plurality of layers of cross beams 2, the towers 3 are vertically arranged among a plurality of groups of the steel columns 1, the heat conductor 4 and the storage tank 5 are fixedly arranged on the cross beam 2, the storage tank 5 is arranged on one side of the heat conductor 4, the guide rail 6 is fixedly arranged on the side surface of the steel column 1, the sliding block 9 is, a movable frame 11 is embedded into one side of the movable block 7, a lifting lug 8 is fixedly mounted at one end of the movable frame 11, a fixed pin shaft 10 and a first locking piece 13 are embedded into the movable block 7, the first locking piece 13 is arranged on one side of the fixed pin shaft 10, a positioning hole 12 is formed in the inner side of the movable block 7, a through hole 14 is formed in the side surface of the guide rail 6, an inner groove 15 is formed in the side surface of the sliding block 9, and a second locking piece 16 is arranged inside the inner groove 15;
the first locking part 13 comprises a fixed block 17, a movable rod 18 penetrates through the fixed block 17, one end of the movable rod 18 is fixedly provided with a pull plate 19, a first spring 20 is sleeved outside the movable rod 18, and the fixed block 17 is fixedly connected with the movable block 7;
the second locking member 16 includes a second spring 21, and a positioning rod 22 is fixedly mounted at one end of the second spring 21.
Furthermore, four groups of movable rods 18 are arranged, the four groups of movable rods 18 are connected with the movable block 7 in a sliding manner, and the end parts of the movable rods 18 are clamped with the positioning holes 12.
Furthermore, the movable block 7 is connected with the movable frame 11 in a rotating manner through a fixed pin shaft 10, and the movable frame 11 is connected with the lifting lug 8 in a welding manner.
Further, the steel column 1 and the cross beam 2 are fixedly connected through locking bolts, and the cross beam 2 is provided with multiple layers.
Further, the guide rail 6 is designed into a U-shaped structure, the guide rail 6 is connected with the sliding block 9 in a sliding mode, and the sliding block 9 is fixedly connected with the movable block 7.
Further, a plurality of groups of through holes 14 are arranged on the guide rail 6.
Further, the steel column 1 and the beam 2 are fixedly connected together through a locking bolt, and the tower 3, the heat conductor 4 and the storage tank 5 are respectively and fixedly connected with the beam 2 through a locking bolt.
The implementation mode is specifically as follows: when the utility model is implemented, during integral installation, the steel column 1 and the beam 2 need to be assembled in advance, and are fixed by using locking bolts to form a frame, then the tower 3, the heat conductor 4 and the storage tank 5 are respectively placed on the assembled frame for fixing, after the integral fixation is completed, so as to form a modularized steel frame, after the integral installation is completed, the guide rail 6 is fixed on the steel column 1, the lifting lug 8 is at the horizontal state at first, the lifting hook passes through the lifting lug 8, so as to complete the horizontal lifting of the steel frame, the pulling plate 19 is held to pull the movable rod 18 outwards, the first spring 20 is compressed, the movable frame 11 is turned over to a certain angle on the movable block 7, the pulling plate 19 is immediately loosened, the first spring 20 pushes the movable rod 18 inwards, the movable rod 18 is inserted into the positioning hole 12, the movable frame 11 and the lifting lug 8 are limited, accomplish the tilting of steel frame and lift by crane, in addition, to propelling movement locating lever 22 in through-hole 14, locating lever 22 slides in inside groove 15, and then compress second spring 21, sliding block 9 then slides on guide rail 6, slide to the position department of the top when it, be in the side surface of crossbeam 2, lug 8 at this moment is in vertical state, the rectilinear of accomplishing the steel frame lifts by crane, can lift by crane the situation according to the reality of steel frame, move the position of lug 8 and the removal of angle, make the whole lifting by crane that can be applicable to different angles of steel frame, the very big staff that has made things convenient for operates, possess higher in-service use and worth.
The utility model discloses the theory of operation:
referring to the attached drawings 1 to 4 of the specification, through the integral design, after the guide rail 6 is fixed on the steel column 1, the lifting lug 8 is in a horizontal state at first, the lifting hook penetrates through the lifting lug 8, so that the steel frame is horizontally lifted, the movable frame 11 is turned to a certain angle on the movable block 7, and the inclined lifting of the steel frame is completed, in addition, the sliding block 9 slides on the guide rail 6, and when the sliding block slides to the uppermost position, the sliding block is positioned on the side surface of the cross beam 2, the lifting lug 8 is in a vertical state at the moment, so that the vertical lifting of the steel frame is completed, the position of the lifting lug 8 and the angle can be moved according to the actual lifting condition of the steel frame, so that the whole steel frame can be suitable for lifting at different angles, the operation of workers is greatly convenient, and the steel frame has higher actual use value;
referring to the attached drawing 1 of the specification, through the modularization installation, assemble steel column 1 and crossbeam 2 in advance, use the locking bolt to fix, form a frame, afterwards, place tower 3, heat conductor 4, storage tank 5 respectively on the frame of equipment, fix, after the monolithic stationary phase is accomplished to form the modularization steel frame, can be comparatively effectual to whole installation, improved work efficiency.
Finally, the above description is only a preferred embodiment of the present invention and should not be taken as limiting the invention, and any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. The utility model provides a take petrochemical industry device module of guide rail slider, includes steel frame module, and steel frame module includes steel column (1), its characterized in that: the steel column is characterized in that a plurality of layers of cross beams (2) are arranged on the steel columns (1), a plurality of groups of steel columns (1) are vertically installed with towers (3), heat conductors (4) and storage tanks (5) are fixedly installed on the cross beams (2), one side of each heat conductor (4) is provided with a storage tank (5), a guide rail (6) is fixedly installed on the side surface of each steel column (1), a sliding block (9) is installed on each guide rail (6), a movable block (7) is fixedly installed on the side surface of each sliding block (9), a movable frame (11) is embedded into one side of each movable block (7), one end of each movable frame (11) is fixedly installed with a lifting lug (8), a fixed pin shaft (10) and a first locking piece (13) are embedded into each movable block (7), a first locking piece (13) is arranged on one side of each fixed pin shaft (10), and a positioning hole, a through hole (14) is formed in the side surface of the guide rail (6), an inner groove (15) is formed in the side surface of the sliding block (9), and a second locking piece (16) is arranged inside the inner groove (15);
the first locking piece (13) comprises a fixed block (17), a movable rod (18) penetrates through the fixed block (17), one end of the movable rod (18) is fixedly provided with a pulling plate (19), a first spring (20) is sleeved outside the movable rod (18), and the fixed block (17) is fixedly connected with the movable block (7);
the second locking piece (16) comprises a second spring (21), and one end of the second spring (21) is fixedly provided with a positioning rod (22).
2. The petrochemical plant module with track blocks of claim 1, wherein: the number of the movable rods (18) is four, the four groups of the movable rods (18) are connected with the movable block (7) in a sliding mode, and the end parts of the movable rods (18) are clamped with the positioning holes (12).
3. The petrochemical plant module with track blocks of claim 1, wherein: the movable block (7) is connected with the movable frame (11) in a rotating mode through a fixed pin shaft (10), and the movable frame (11) is connected with the lifting lug (8) in a welding mode.
4. The petrochemical plant module with track blocks of claim 1, wherein: the steel column (1) and the cross beam (2) are fixedly connected through locking bolts, and the cross beam (2) is provided with multiple layers.
5. The petrochemical plant module with track blocks of claim 1, wherein: the guide rail (6) is designed into a U-shaped structure, the guide rail (6) is connected with the sliding block (9) in a sliding mode, and the sliding block (9) is fixedly connected with the movable block (7).
6. The petrochemical plant module with track blocks of claim 5, wherein: and multiple groups of through holes (14) are arranged on the guide rail (6).
7. The petrochemical plant module with track blocks of claim 1, wherein: the steel column (1) and the cross beam (2) are fixedly connected together through locking bolts, and the tower (3), the heat conductor (4) and the storage tank (5) are respectively and fixedly connected with the cross beam (2) through the locking bolts.
CN202020906270.XU 2020-05-26 2020-05-26 Petrochemical device module with guide rail sliding block Active CN212222192U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020906270.XU CN212222192U (en) 2020-05-26 2020-05-26 Petrochemical device module with guide rail sliding block

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020906270.XU CN212222192U (en) 2020-05-26 2020-05-26 Petrochemical device module with guide rail sliding block

Publications (1)

Publication Number Publication Date
CN212222192U true CN212222192U (en) 2020-12-25

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Application Number Title Priority Date Filing Date
CN202020906270.XU Active CN212222192U (en) 2020-05-26 2020-05-26 Petrochemical device module with guide rail sliding block

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115744572A (en) * 2023-01-03 2023-03-07 太原科技大学 Automatic bulk material hoisting system and process

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115744572A (en) * 2023-01-03 2023-03-07 太原科技大学 Automatic bulk material hoisting system and process
CN115744572B (en) * 2023-01-03 2023-04-07 太原科技大学 Automatic bulk material hoisting system and process

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